Successive appromixation analog/digital converter and associated integrated component and conversion method

a technology of analog/digital converters and integrated components, applied in the field of analog/digital converters, can solve the problems of loss of conversion time for the majority of input voltages vin, and achieve the effect of reducing the clock signal period, reducing the clock period advantageously, and minimising the clock period width

Active Publication Date: 2008-05-01
ATMEL CORP
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Benefits of technology

[0046]Thus, a time delay makes it possible to guarantee a minimum clock period width, in particular for the logic implemented in the successive approximation register.
[0047]According to one embodiment of the disclosure, the means of generating the conversion clock include means of reducing the clock signal period.
[0048]It is thus possible to obtain a clock signal the clock period of which is optimised throughout the conversion phase.
[0049]Said means of reducing the clock period advantageously include two inverters mounted in serial.
[0050]Said means of reducing the clock period advantageously include means of insulating the analog / digital converter from noise generated by the dynamic adaptation means.

Problems solved by technology

In this way, one is placed in the least favourable situation in terms of the speed of the conversion operation, and, at each of the conversion steps, a loss of conversion time is thus observed for the majority of the input voltages Vin.

Method used

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  • Successive appromixation analog/digital converter and associated integrated component and conversion method
  • Successive appromixation analog/digital converter and associated integrated component and conversion method
  • Successive appromixation analog/digital converter and associated integrated component and conversion method

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Embodiment Construction

[0074]FIG. 7 shows a simplified block diagram of a successive approximation analog / digital converter according to one particular embodiment of the disclosure.

[0075]The successive approximation ADC 7000 includes:[0076]a digital / analog converter 710 (hereinafter referenced as DAC) supplied at a first input 712 with a constant reference voltage (or signal) Vref;[0077]a sample-and-hold device 750 of which a first input 751 is supplied with the input voltage (or signal) Vin (analog) of the successive approximation ADC, a second input 753 is connected to a first output 735 of the SAR 730 which delivers a hold signal, hereinafter referenced as Vhold, and an output 754 delivers a signal Vin1 the value of which is stable and the value of which is equal to that of the input voltage Vin at the end of the sampling period, during the conversion phase;[0078]a first comparator 720 of which a first input 721 is supplied with the voltage (or signal) Vin1 delivered to the output 754 of the sample-and...

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Abstract

A successive approximation analog/digital converter is provided, which includes a successive approximation register supplying a digital/analog converter, first means of comparing an input signal of the analog/digital converter to an output signal of the digital/analog converter delivering a first comparison signal, said successive approximation analog/digital converter being synchronised by a clock signal coming from a conversion clock. A method such as this includes dynamic adaptation of the conversion clock period based on at least one parameter.

Description

CROSS-REFERENCE TO RELATED APPLICATION[0001]None.FIELD OF THE DISCLOSURE[0002]The field of the disclosure is that of analog / digital converters, and more particularly successive-approximation type analog / digital converters.[0003]More precisely, the disclosure relates to generating the clock for a successive-approximation type analog / digital converter (hereinafter designated as successive approximation ADC).BACKGROUND OF THE DISCLOSURE[0004]A simplified block diagram of a conventional successive approximation analog / digital converter 1000 is shown in FIG. 1.[0005]The successive approximation ADC 1000 includes:[0006]an digital / analog converter 110 (hereinafter referenced as DAC);[0007]a sample-and-hold device 150, the input of which corresponds to the successive approximation ADC 1000 input, and which is therefore supplied with the ADC 1000 input voltage, hereinafter referenced as voltage VIN, and the output of which, supplying a voltage hereinafter referenced as voltage Vin1, is conne...

Claims

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Application Information

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Patent Type & Authority Applications(United States)
IPC IPC(8): H03M1/38
CPCH03M1/462
Inventor CHATAL, JOELBENDRAOUI, ABDELLATIF
Owner ATMEL CORP
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